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Chelikani, P. K.

Publications and source records attributed to Chelikani, P. K..

2 recordsLinked to original sources

Sex dimorphism in the aged metabolic phenotype of smoothelin-like 1 (SMTNL1) deficient mice

Smoothelin-like 1 (SMTNL1) is expressed in smooth and skeletal muscle tissues as well as a variety of steroid hormone-sensitive tissues. SMTNL1 can play a sex-dependent regulatory role in skeletal muscle metabolism in mice. Previous studies have documented appreciable changes in muscle morphology and metabolic function of young male mice with genetic deletion of Smtnl1. SMTNL1 can also impact the energy metabolism and insulin sensitivity of female mice during pregnancy. Therefore, we investigated the metabolic outcome of global SMTNL1 knockout (KO) in male and female mice with advancing age using a comprehensive lab animal monitoring system (CLAMS). With ageing, body weight gain was markedly higher with a concomitant increase in whole body adiposity as well as specific white adipose depots in the absence of SMTNL1. Moreover, this genotypic difference in whole body adiposity was greater in the female cohort. The deletion of SMTNL1 was also associated with delayed satiety in mice fed a high fat diet, which was more pronounced in the female mice. A significant genotypic difference was also revealed for the metabolic energy balance in 12 month old animals of both sexes. The KO animals were metabolically less efficient and displayed a preference for carbohydrate catabolism. However, reduced glucose tolerance was observed only in the female group with the deletion of SMTNL1. Taken together, the current findings establish a novel role for SMTNL1 in modulating adiposity and energy metabolism with ageing in a sex dimorphic way.

biochemistry↗

A Genetic Variant of Fatty Acid Amide Hydrolase (FAAH) Exacerbates Hormone- Mediated Orexigenic Feeding in Mice

Fatty acid amide hydrolase (FAAH) degrades the endocannabinoid anandamide. A polymorphism in FAAH (FAAH C385A) reduces FAAH expression, increases anandamide levels, and increases the risk of obesity. Nevertheless, some studies have found no association between FAAH C385A and obesity. We investigated whether the environmental context governs the impact of FAAH C385A on metabolic outcomes. Using a C385A knock-in mouse model, we found that under basal conditions, there was no effect of the FAAH C385A polymorphism on body weight or composition. By contrast, FAAH A/A mice are more susceptible to glucocorticoid-induced hyperphagia, weight gain, and activation of hypothalamic AMPK. AMPK inhibition occluded the amplified hyperphagic response to glucocorticoids in FAAH A/A mice. FAAH knockdown exclusively in AgRP neurons mimicked the exaggerated feeding response of FAAH A/A mice to glucocorticoids. FAAH A/A mice likewise presented exaggerated orexigenic responses to ghrelin, while FAAH knockdown in AgRP neurons blunted leptin anorectic responses. Together, the FAAH A/A genotype amplifies orexigenic responses and decreases anorexigenic responses, providing a putative mechanism explaining the diverging human findings.

neuroscience↗